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Ocean variability and air-sea fluxes produced by atmospheric rivers

机译:大气河流产生的海洋变化性和海气通量

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摘要

Atmospheric rivers (ARs) cause heavy precipitation and flooding in the coastal areas of many mid-latitude continents, and thus the atmospheric processes associated with the AR have been intensively studied in recent years. However, AR-associated ocean variability and air-sea fluxes have received little attention because of the lack of high-resolution ocean data until recently. Here we demonstrate that typical ARs can generate strong upper ocean response and substantial air-sea fluxes using a high-resolution (1/12°) ocean reanalysis. AR events observed during the CalWater 2015 field campaign generate large-scale on-shore currents that hit the coast, generating strong narrow northward jets along the west coast of North America, in association with a substantial rise of sea level at the coast. In the open ocean, the AR generates prominent changes of mixed layer depth, especially south of 30°N due to the strong surface winds and air-sea heat fluxes. The prominent cooling of SST is observed only in the vicinity of AR upstream areas primarily due to the large latent heat flux. Using a long-term AR dataset, composite structure and variations of upper ocean and air-sea fluxes are presented, which are consistent with those found in the events during CalWater 2015.
机译:大气河流(ARs)在许多中纬度大陆的沿海地区引起大量的降雨和洪水,因此,近年来对与AR相关的大气过程进行了深入研究。然而,与AR相关的海洋变化性和海-气通量一直受到关注,因为直到最近才缺乏高分辨率的海洋数据。在这里,我们证明了典型的AR可以通过高分辨率(1/12°)海洋再分析来产生强烈的上层海洋响应和大量的海海通量。在CalWater 2015野战期间观察到的AR事件产生了大规模的陆上水流,这些水流袭击了海岸,沿着北美西海岸产生了强烈而狭窄的北向喷流,并伴随着海岸海平面的大幅上升。在大洋中,由于强表面风和海气热通量,AR产生了混合层深度的显着变化,尤其是在30°N以南。主要由于大的潜热通量,仅在AR上游区域附近观察到SST明显冷却。利用长期的AR数据集,提出了高空和海海通量的组合结构和变化,这与2015年CalWater事件中发现的一致。

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